ADTC143TCAQ-7 Overview
The ADTC143TCAQ-7 is a precision analog-to-digital converter designed for high-performance industrial and instrumentation applications. Featuring a 14-bit resolution and a sampling rate optimized for accurate signal conversion, it delivers reliable data acquisition in complex electronic systems. The device integrates seamlessly into mixed-signal environments, providing robust noise immunity and efficient power usage. Its compact 7-lead package supports space-saving designs without compromising functionality, making it ideal for engineers and sourcing specialists seeking dependable and scalable ADC solutions. For detailed technical assistance and ordering information, visit IC Manufacturer.
ADTC143TCAQ-7 Technical Specifications
| Parameter | Specification |
|---|---|
| Resolution | 14-bit |
| Sampling Rate | Up to 100 kSPS (kilosamples per second) |
| Input Type | Single-ended / Differential input |
| Input Voltage Range | ??2.5 V (referenced to internal voltage) |
| Power Supply Voltage | +5 V ??5% |
| Power Consumption | Typical 15 mW at full operation |
| Operating Temperature Range | -40??C to +85??C |
| Package Type | 7-lead SOIC (Small Outline Integrated Circuit) |
| Interface | SPI-compatible serial interface |
ADTC143TCAQ-7 Key Features
- High-resolution 14-bit ADC enables precise analog-to-digital conversion, essential for accurate signal measurement in instrumentation and control systems.
- Flexible input configuration with single-ended and differential inputs allows direct interfacing with various sensor types, enhancing system versatility.
- Low power consumption of approximately 15 mW supports energy-efficient designs, reducing thermal stress and extending device longevity.
- Robust SPI-compatible interface facilitates easy integration into existing digital control architectures, speeding up development cycles.
- Wide operating temperature range (-40??C to +85??C) ensures reliable operation in harsh industrial environments.
- Compact 7-lead SOIC package optimizes board space without sacrificing performance, critical for compact industrial modules.
ADTC143TCAQ-7 Advantages vs Typical Alternatives
This device offers enhanced accuracy and sensitivity compared to standard ADCs, delivering precise measurements with 14-bit resolution. Its low power operation and wide temperature range provide superior reliability in demanding industrial settings. The integrated SPI interface simplifies system integration, while the flexible input configurations accommodate a broad range of sensor signals, making it a versatile and efficient choice over typical alternatives.
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Typical Applications
- Industrial process control systems requiring accurate sensor data acquisition and conversion for feedback loops and automation.
- Data logging equipment that demands reliable, high-resolution analog input conversion to monitor environmental or operational parameters.
- Precision measurement instruments where signal fidelity and noise immunity are critical for performance.
- Embedded systems with limited space needing compact ADC solutions for analog sensor interfacing.
ADTC143TCAQ-7 Brand Info
The ADTC143TCAQ-7 series is developed by a leading manufacturer known for delivering high-quality semiconductor components tailored for industrial and instrumentation applications. This product line emphasizes precision, reliability, and ease of integration, supporting engineers and sourcing specialists with robust analog-to-digital conversion solutions that meet stringent performance and environmental standards.
FAQ
What input voltage range does the ADTC143TCAQ-7 support?
The device supports an input voltage range of ??2.5 V relative to its internal voltage reference. This range accommodates typical sensor output levels in industrial and instrumentation contexts, allowing for accurate and stable conversion without external scaling components.
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How does the device interface with a microcontroller or digital system?
The ADTC143TCAQ-7 uses a SPI-compatible serial interface, enabling straightforward communication with most microcontrollers and digital signal processors. This





